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Datei
DZM.asm
Prescaler-Teiler / 8 .equ Prescaler64 = 0b00000011 ; Timer Start und Prescaler-Teiler / 64 .equ Prescaler256 = 0b00000100 ; Timer Start und Prescaler-Teiler / 256 .equ Prescaler1024 = 0b00000101 ; Timer Start und Prescaler-Teiler / 1024 .equ c_LCD_clear = 0b00000001 ; loesche LCD-Anzeige .equ c_LCD_4bit =
in „Assembler: Problem mit Registerpaar“ · Mikrocontroller und Digitale Elektronik ·
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Datei
WAV-PLAY.ASM
************************************************************************************ ;WAVE PLAYER ;AT90S2313 ;*********************************************************************************************** .include "2313def.inc" .DEVICE AT90S2313 .EQU mem_limit=0x04 ;2Mbit flash (=0x08 4Mbit flash) .
in „DataFlash (Beschreiben+Auslesen)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Bootlog_VIP1710_mit_Soft.TXT
image stored in flash flash: Image size: 15313777 bytes Image is AES encrypted (ELF)... done loaded at: 82000000 820C4604 zimage at: 8200F000 820C4604 Uncompressing Linux at load address 80100000 initrd at: 820C4604 82EA448C relocated to: 802DAFF8 810BAE80 Booting linux kernel LINUX started... ATI Xilleon
in „Pollin MOTOROLA VIP1710“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC16F1503.pdf
2: Refer to Table 28-1 for each Oscillator mode’s supported frequencies. FIGURE 28-2: PIC16LF1503 VOLTAGE FREQUENCY GRAPH, -40°C T A +125°C V 3.6 ( D V 2.5 1.8 0 4 10 16 20 Frequency (MHz) Note 1: The shaded region indicates
in „Versorgungsspannung vom PIC mit PIC messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
examples.pdf
process; end behavior; Exclusive-OR Gate (Structural style) -- 2 input exclusive-or gate. -- Modeled at the structural level. entity x_or is port ( in1 : in bit ; in2 : in bit ; out1 : out bit) ; end x_or; entity and_gate is port ( a : in bit ; b : in bit ; c : out bit) ; end and_gate; architecture behavior
in „Bidirektionale Pins in Quartus II (Altera)“ · FPGA, VHDL & Co. ·
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PDF
AVR-ASM-Tutorial_16_05_08_v3.pdf
geschrieben: ;*************************************************************************** ;* A P P L I C A T I O N N O T E F O R T H E A V R F A M I L Y ;* ;* Number :AVR000 ;* File Name :"2313def.inc" ;* Title :Register/Bit Definitions for the AT90S2313 ;* Date :99.01.28 ;* Version :1.30 ;* Support E-Mail
in „AVR-ASM-Tutorial: PDF 16.5.08“ · www.mikrocontroller.net ·
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Datei
daisy1.3.1.c
[24]; longname[24]=bigbufferC[28]; longname[25]=bigbufferC[30]; clipper=25; for (ii=13;ii<26;ii++){ if (longname[ii]==0){clipper=ii;} } if (sum==bigbufferD[13]){ longname[26]=bigbufferD[1]; longname[27]=bigbufferD[3]; longname[28
in „@ SD & MMC Spezialisten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TemperatursensorAnleitung.pdf
C Bus Overview Philips (Philips) at 20 years ago invented a simple two-wire bidirectional serial communication 2 2 bus, the bus is called the Inter-I C bus. Currently I C bus has become the industry standard
in „Raspberry Pi - Modbus RTU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mXyzrssr.pdf
CONFIGURATIONS BLOCK DIAGRAM RESET 1 32 VDD V DD A16 2 31 WE V SS A15 3 30 A17 4 29 CE A12 A14 DQ0 A7 5 28 A13 OE . 6 27 CONTROL OUTPUT . A6 A8 BUFFER A5 7 32-pin 26 A9 WE DQ7 8 25 A11 A4 DIP RESET A3 9 24 OE 10 23 A10 A2 A1 11 22 CE A0 12 21 DQ7 BOOT BLOCK 3FFFF DQ0 13 20 DQ6 DQ1 14 19 DQ5 16K BYTES 3C000
in „Eprom Auslesen mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STA310.pdf
MAINI2CADD RS232TX 9 52 TESTB VDD3 10 51 VDD3 GND 11 50 GND A0 12 49 SMODE A1 13 48 IRQB A2 14 47 SELI2C A3 15 46 SCLKI2C A4 16 45 GND VDD 17 44 VDD A5 18 43 SDAI2C A6 19 42 REQ A7 20 41 SIN 21 22 23 24 256 27 28 29 3031 32 33 34 35 3637 38 39 40 S B N D D D A D D S L D N D T T R D N I C R G P P P L D N
in „Sammelbestellung STA310 Dolby Digital Decoder“ · Markt ·
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PDF
22103a.pdf
1.8V ≤ VDD ≤ 5.5V at -40°C ≤AT≤ +125°C. Parameter No. Sym Characteristic Min Typ ( 2)Max Units Conditions 50 t Serial data to output valid — — 500 ns GPOV 51 tINTD Interrupt pin disable time — — 600 ns 52 tGPIV GP input
in „MCP23S18 I/O Expander“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430F2xxx_ppt.pdf
P2OUT &= ~SCLK; } 425 Cycles © 2005 Texas Instruments Inc, Slide 27 F20xx USI Enables Practical I2C • I2C Slave has as little as 4us from clock edge to data • Software only solution allows little else • USI hardware enables practical and compliant I2C © 2005 Texas Instruments Inc, Slide 28 F20x2 ADC10
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ATMega164_324_644_1284pa.pdf
SRAM 8-bit Atmel – Write/Erase Cycles: 10,000 Flash/ 100,000 EEPROM – Data retention: 20 years at 85°C/ 100 years at 25°C Microcontroller – Optional Boot Code Section with Independent Lock Bits In-System Programming by On-chip Boot Program True Read-While-Write Operation with – Programming Lock for
in „Hilfe bei AD-Wandler!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
go-SSD1325.pdf
the input data is interpreted as data or command. Data is interpreted based upon the input of the D/C# pin. If D/C# pin is HIGH, the input at D -7 is0written to Graphic Display Data RAM (GDDRAM). If it is LOW, the input at D -D is interpreted as a Command which will be decoded and be written to the 7
in „Wie Dc/Dc-Wanlder aktivieren? (Display)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
go-SSD1325.pdf
the input data is interpreted as data or command. Data is interpreted based upon the input of the D/C# pin. If D/C# pin is HIGH, the input at D -7 is0written to Graphic Display Data RAM (GDDRAM). If it is LOW, the input at D -D is interpreted as a Command which will be decoded and be written to the 7
in „Densitron OLED“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM151X3-A2.pdf
Input Voltage V CC 4.5 5.0 5.5 Vdc Power Supply Input Current CC - 0.420 0.550 A 1 Power Consumption P c - 2.1 3.3 Watts 1 LAMP Operating Voltage VBL 585(9mA) 605(8mA) 720(3mA) V RMS 2 Operating Current IBL 3.0 8.0 9.0 mA Established Starting Voltage V BS 3 at 25 - - 1020 V RMS at 0 - - 1400 V RMS Operating
in „Mikrocontroller und 15'' TFT LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PicoMODA12_Hardware_eng.pdf
Power On I/O-Pin 8 24 IO9 I/O-Pin 9 / GPIO5 25 IO10 USB Device Detect. Low activeI/O-Pin 10 26 IO11 I2C SDA I/O-Pin 11 27 IO12 I2C SCL I/O-Pin 12 28 NC (do not use) 29 NC (do not use) Hardware Documentation PRELIMINARY PicoMOD1.|5 of 14 J1 Pin Signal Default Interface Alternative Function 30 NC (do not
in „PicoMOD1 - 400 MHz 32MB Ram SBC für 9,95 von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Datei
88DDS.txt
TWSI_END l26: cpi ADDRESS,0x1a ; r26 ? brne l27 mov r26,DATA ; yes, set rjmp TWSI_END l27: cpi ADDRESS,0x1c ; r27 ? brne l29 mov DUTY,DATA ; yes, set rjmp TWSI_END l28: cpi ADDRESS,0x1c ; r28 ? brne l29 mov r28,DATA ; yes, set rjmp TWSI_END l29: cpi ADDRESS,0x1d ; r29 ? brne l30 mov r29,DATA ; yes, set rjmp
in „DDS Sinus erzeugung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
OneWire.c
/* Copyright (c) 2007, Jim Studt (original old version - many contributors since) The latest version of this library may be found at: http://www.pjrc.com/teensy/td_libs_OneWire.html OneWire has been maintained by Paul Stoffregen (paul@pjrc.com) since January 2010. At the time, it was in need of many bug fixes, but had been abandoned the original author (Jim Studt). None of the known contributors were interested in maintaining OneWire. Paul typically works on OneWire
in „Böses One-Wire device“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN2131_datasheet.PDF
6-5. Byte Inserted by EZ-USB Core at Location 0x45 if AVEN=1 Interrupt Inserted Byte at 0x45 SUDAV 0x00 SOF 0x04 SUTOK 0x08 SUSPEND 0x0C USBRES 0x10 Reserved 0x14 EP0-IN 0x18 EP0-OUT 0X1C EP1-IN 0x20 EP1OUT 0x24 EP2IN 0x28 EP2OUT 0x2C EP3
in „Aufrufen von Funktion legt auch vorherigen Teil des Programms lahm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN2131_datasheet.PDF
6-5. Byte Inserted by EZ-USB Core at Location 0x45 if AVEN=1 Interrupt Inserted Byte at 0x45 SUDAV 0x00 SOF 0x04 SUTOK 0x08 SUSPEND 0x0C USBRES 0x10 Reserved 0x14 EP0-IN 0x18 EP0-OUT 0X1C EP1-IN 0x20 EP1OUT 0x24 EP2IN 0x28 EP2OUT 0x2C EP3
in „Einteilung von data, pdata, xdata, code?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT45DBxxx.pdf
14 CS SCK 5 29 WP RESET 2 13 NC SI 6 28 RESET WP 3 12 NC SO 7 27 RDY/BUSY NC 8 26 NC VCC 4 11 NC NC 10 24 NC GND 5 10 NC NC 11 23 NC SCK 6 9 NC NC 12 22 NC SO 7 8 SI NC 13 21 NC 1 1 1 1 1 1 2 C C C C C C C N N D D N N N Rev. 1103C–08/98 Note
in „write und read Probleme bei Atmel Flash“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP2551.pdf
kHz VRS = 0V -40°C ≤ TMB ≤ +125°C, 3 TtxL2bus(d) Delay TXD to bus active — 70 ns VRS = 0V -40°C ≤ AMB ≤ +85°C, — 125 ns VRS = 0V 4 TtxH2bus(r) Delay TXD to bus inactive — 170 ns -40°C ≤ TMB ≤ +125°C, VRS = 0V — 130 ns -40°C ≤ TMB ≤ +125°C, VRS = 0V 5 TtxL2rx(d) Delay TXD to receive active -40°C ≤ AMB ≤ +125°C, — 250 ns RS = 47 kΩ -40°C ≤ TMB ≤ +85°C, — 175 ns VRS = 0V -40°C ≤ AMB ≤ +85°C, — 225 ns RS = 47 kΩ 6 TtxH2rx(r
in „MCP2551 Standby Mode wenn AVR im Power down Modus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
C8051F53x.pdf
I R e o r - e m a c c O M F R C S U T P P 1 L I T A R P C8051F520A-IM 25 8 kB 256 0.5% 3 6 DFN-10 C8051F521A-IM 25 8 kB 256 0.5% 3 6 — DFN-10 C8051F523A-IM 25 4 kB 256 0.5% 3 6
in „[V]erkaufe 35 µC von Silabs C8051F531 (TSSOP-20)“ · Markt ·
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PDF
C8051F531.pdf
I R e o r - e m a c c O M F R C S U T P P 1 L I T A R P C8051F520A-IM 25 8 kB 256 0.5% 3 6 DFN-10 C8051F521A-IM 25 8 kB 256 0.5% 3 6 — DFN-10 C8051F523A-IM 25 4 kB 256 0.5% 3 6
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PDF
ATMega_48_88_168.pdf
interrupt is executed. In PWM mode, this bit is set when Timer/Counter2 changes counting direction at 0x00. Timer/Counter Prescaler Figure 65. Prescaler for Timer/Counter2 clk I/O clkT2S Clear 10-BIT T/C PRESCALER TOSC1 /S / / 2 5 2 T 2 2 / / 1 c kT kT T T /2 AS2 c c l l kT c c c PSRASY 0 CS20 CS21 CS22
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avraes.asm
,$9e,$81,$f3,$d7,$fb .db $7c,$e3,$39,$82,$9b,$2f,$ff,$87,$34,$8e,$43,$44,$c4,$de,$e9,$cb .db $54,$7b,$94,$32,$a6,$c2,$23,$3d,$ee,$4c,$95,$0b,$42,$fa,$c3,$4e .db $08,$2e,$a1,$66,$28,$d9,$24,$b2,$76,$5b,$a2,$49,$6d,$8b,$d1,$25 .db
in „Assembler mit C verknüpfen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp6004.pdf
— 331 — °C/W Thermal Resistance, 5L-SOT-23 θJA — 256 — °C/W Thermal Resistance, 8L-PDIP θJA — 85 — °C/W Thermal Resistance, 8L-SOIC (150 mil) θJA — 163 — °C/W Thermal Resistance, 8L-SOIC (208 mil) θJA — 118 — °
in „Nichtinvertierender Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1085.pdf
≤ (IN – VOUT) ≤ 25V for LT1084 at –55°C ≤ J ≤ –40°C. power dissipation will not be available over the full input/output voltage range. Note 8: Dropout is 1.7V maximumfor LT1084 at –55°C ≤ T J –40°C. 108345ff 3 LT1083/LT1084/LT1085 W
in „Suche einstellbaren Spannungsregler mit niedriegen Eigenstromverbrauch“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1084CP.pdf
≤ (IN – VOUT) ≤ 25V for LT1084 at –55°C ≤ J ≤ –40°C. power dissipation will not be available over the full input/output voltage range. Note 8: Dropout is 1.7V maximumfor LT1084 at –55°C ≤ T J –40°C. 108345ff 3 LT1083/LT1084/LT1085 W
in „LT1083 Regelt nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCN_DN43A_20000630.pdf
. PCA84C122AT/211 C84C122211D VIDEO MICROC.DERIV.80C48 CPU 935245160118 T S 3 31-3-01 30-6-01 See Comments. Can be replaced by 8521 Micro or PCA84C222/422/622. Consult Marketing. PCA84C122AT/212 C84C122212D VIDEO
in „Mosfet Identifikation“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.lst
ldi r27,hi8(.LC2) 252 012c 7B2E mov r7,r27 253 .LBB9: 254 .LM27: 255 012e A0E0 ldi r26,lo8(.LC3) 256 0130 8A2E mov r8,r26 257 0132 A0E0 ldi r26,hi8(.LC3) 258 0134 9A2E mov r9,r26 259 .L13: 260 .LBE9: 261 .LBE8: 262 .LM28: 263
in „RAM-Bankswitching - wie am geschicktesten mit GCC auf AVR?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR-ASM-Tutorial_16_05_08_v1.pdf
Versorgungsspannung zu unterdrücken. Hier die Liste der benötigten Bauteile: • R1 Widerstand 10 kOhm • C1 Keramikkondensator 47 nF • C2 Keramik- oder Folienkondensator 100 nF • Stiftleiste 6-polig • MikrocontrollerATmega8 oderAT90S4433 (kann auf http://shop.mikrocontroller.net/ bestellt werden) • Quarzoszillator
in „AVR-ASM-Tutorial: PDF 16.5.08“ · www.mikrocontroller.net ·
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PDF
IL3829.pdf
. When serial interface is selected, this pin R/W (WR#) can be connected to either VDDIO or VSS. D/C# I MPU This pin is Data/Command control pin connecting to the MCU. VDDIO or When the pin is pulled HIGH, the data at D [7:0] will be VSS interpreted as data. When the pin is pulled LOW, the data at D
in „IL3829 - E-Paper Display Treiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32F350xx_DS_v1.1.pdf
SPI0_MISO,I2S0_MCK, TIMER2_CH0, TSI_G4_IO1, EVENTOUT Default: PB5 Alternate: SPI0_MOSI,I2S0_SD, I2C0_SMBA, TIMER15_BKIN, PB5 57 41 28 26 I/O 5VT TIMER2_CH1 Additional:WKUP5 Default: PB6 PB6 58 42 29 27 I/O 5VT Alternate: I2C0_SCL, USART0_TX, TIMER15_CH0_ON, TSI_G4_IO2 Default: PB7 PB7 59 43 30 28 I
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32F350xx_DS_v1.1.pdf
SPI0_MISO,I2S0_MCK, TIMER2_CH0, TSI_G4_IO1, EVENTOUT Default: PB5 Alternate: SPI0_MOSI,I2S0_SD, I2C0_SMBA, TIMER15_BKIN, PB5 57 41 28 26 I/O 5VT TIMER2_CH1 Additional:WKUP5 Default: PB6 PB6 58 42 29 27 I/O 5VT Alternate: I2C0_SCL, USART0_TX, TIMER15_CH0_ON, TSI_G4_IO2 Default: PB7 PB7 59 43 30 28 I
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A4963-Datasheet.pdf
www.allegromicro.com A4963 Sensorless BLDC Controller ELECTRICAL CHARACTERISTICS (continued): valid at TA= 25°C, V BB = 4.2 V to 28 V (unless noted otherwise) Characteristics Symbol Test Conditions Min. Typ. Max. Unit Logic Inputs & Outputs Input Low Voltage VIL – – 0.8 V Input High Voltage VIH 2.0 –
in „A4963 BLDC Motor Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
65013-8_LP_Lernpaket_Experimente_mit_USB.pdf
. Sie können in 5 einfachen Schritten eine universelle I C- Schnittstelle entwickeln. Das letzte Software-Beispiel in diesem Lernpaket zeigt Ihnen in Ansätzen, wie man komplexe Aufgaben, wie z. B. eine Flash-Programmierung des AT89LP-Mikrocon- trollers über
in „Buderus EMS-"Gateway" mit PIC18F / Sammelbestellung“ · Haus & Smart Home ·
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Datei
lib_AT91SAM7S256.h
PIO controllers to periph mode AT91F_PIO_CfgPeriph( AT91C_BASE_PIOA, // PIO controller base address ((unsigned int) AT91C_PA29_RI1 ) | ((unsigned int) AT91C_PA26_DCD1 ) | ((unsigned int) AT91C_PA28_DSR1 ) | ((unsigned int) AT91C_PA27
in „C Datein werden in Eclipse nicht kompiliert“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slyt086.pdf
tangential lines are constants, for –7 V < V < 12 V. their ratios are constant and may be determined at any The maximum nUL occurs when the first derivative voltage. By definition, the current into 1 unit load at 12 V equals zero, or will be 1 mA, and at –7 V will be –0.8 mA. These values f( ) f( ) are
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PDF
ILI9325.pdf
VP29 o c VgP43 1R RN27 VN29 o c VgN43 RP28 VP30 8 l RN28 VN30 8 l { RP29 VP31 S { RN29 VN31 S RP30 VP32 RN30 VN32 RP31 PKP4[2:0] RN31 PKN4[2:0] VP33 VN33 RP32 VP34 RN32 VN34 RP33 VP35 o RN33 VN35 o RP34 VP36 1 c RN34 VN36 1 c 1R RP36 VP38 t l VgP55 1R RN36 VN38 t l VgN55 { RP37 VP39 8 e { RN37 VN39 8 e RP38 VP40 S RN38 VN40 S VRCP1 VRCN1 0 ~ 28R PRP1[2:0] PKP5[2:0] 0 ~ 28R PRN1[2:0] PKN5[2:0] VP41 VN41 RP39
in „Programmierung von ILI9325 TFT Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILI9325DS_V0.28.pdf
VP29 o c VgP43 1R RN27 VN29 o c VgN43 RP28 VP30 8 l RN28 VN30 8 l { RP29 VP31 S { RN29 VN31 S RP30 VP32 RN30 VN32 RP31 PKP4[2:0] RN31 PKN4[2:0] VP33 VN33 RP32 VP34 RN32 VN34 RP33 VP35 o RN33 VN35 o RP34 VP36 1 c RN34 VN36 1 c 1R RP36 VP38 t l VgP55 1R RN36 VN38 t l VgN55 { RP37 VP39 8 e { RN37 VN39 8 e RP38 VP40 S RN38 VN40 S VRCP1 VRCN1 0 ~ 28R PRP1[2:0] PKP5[2:0] 0 ~ 28R PRN1[2:0] PKN5[2:0] VP41 VN41 RP39
in „Chinesisches TFT LCD zum Schnäppchenpreis“ · Mikrocontroller und Digitale Elektronik ·
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Datei
HardwareSerial.cpp
>256) uint8_t oldSREG = SREG; cli(); #endif tx_buffer_index_t head = _tx_buffer_head; tx_buffer_index_t tail = _tx_buffer_tail; #if (SERIAL_TX_BUFFER_SIZE>256) SREG = oldSREG; #endif if (head >= tail) return
in „Arduino HardwareSerial Bibiothek unterstützt jetzt RS485“ · Projekte & Code ·
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PDF
doc0856.pdf
cleared otherwise. Z: R7• R6 •R5• R4 •R3 •R2 •R1 •R0 Set if the result is $00; cleared otherwise. C: Rd7 •Rr7 +Rr7 •R7+ R7 •Rd7 Set if there was carry from the MSB of the result; cleared otherwise. R (Result) equals Rd after the operation. Example: add r1,r2 ; Add r2 to r1 (r1=r1+r2) add r28,r28 ;
in „Wie schnell ist euer uC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INSTR_SET.pdf
cleared otherwise. Z: R7• R6 •R5• R4 •R3 •R2 •R1 •R0 Set if the result is $00; cleared otherwise. C: Rd7 •Rr7 +Rr7 •R7+ R7 •Rd7 Set if there was carry from the MSB of the result; cleared otherwise. R (Result) equals Rd after the operation. Example: add r1,r2 ; Add r2 to r1 (r1=r1+r2) add r28,r28 ;
in „Schritt für Schritt zum Programierer!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INSTR_SET.pdf
cleared otherwise. Z: R7• R6 •R5• R4 •R3 •R2 •R1 •R0 Set if the result is $00; cleared otherwise. C: Rd7 •Rr7 +Rr7 •R7+ R7 •Rd7 Set if there was carry from the MSB of the result; cleared otherwise. R (Result) equals Rd after the operation. Example: add r1,r2 ; Add r2 to r1 (r1=r1+r2) add r28,r28 ;
in „Maschinensprache für ATMEL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_Instruction_Set__doc0856.pdf
cleared otherwise. Z: R7• R6 •R5• R4 •R3 •R2 •R1 •R0 Set if the result is $00; cleared otherwise. C: Rd7 •Rr7 +Rr7 •R7+ R7 •Rd7 Set if there was carry from the MSB of the result; cleared otherwise. R (Result) equals Rd after the operation. Example: add r1,r2 ; Add r2 to r1 (r1=r1+r2) add r28,r28 ;
in „Benötigte Taktzyklen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr_instruction_set.pdf
cleared otherwise. Z: R7• R6 •R5• R4 •R3 •R2 •R1 •R0 Set if the result is $00; cleared otherwise. C: Rd7 •Rr7 +Rr7 •R7+ R7 •Rd7 Set if there was carry from the MSB of the result; cleared otherwise. R (Result) equals Rd after the operation. Example: add r1,r2 ; Add r2 to r1 (r1=r1+r2) add r28,r28 ;
in „HEX Code Tabelle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ferroxcube_Data_Handbook.pdf
(mT) at CORE LOSS (W) at GRADE H = 250 A/m; f = 25 kHz; f = 100 kHz; f = 25 kHz; Bˆ = 200 mT; Bˆ= 100 mT; T = 100 °C T = 100 °C T = 100 °C 3C90 ≥320 ≤ 0.52 ≤ 0.58 2013 Jul 31 256 Ferroxcube E cores and accessories
in „Maximale Magnetflussdichte im Ferritkern Temperaturangabe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SDA5252-2_Siemens.pdf
11 42 P3.5 SDA5251-2 XTAL1 12 SDA5252-2 41 P3.6 XTAL2 13 SDA5254-2 40 P3.7 P4.0 14 SDA5255-2 39 N.C. SDA5256-2 RST 15 SDA5257-2 38 N.C. P1.7 16 37 VDD P1.6 17 36 P3.3 P1.5 18 35 V SS P1.4 19 34 P2.0 P1.3 20 33 P2.1 P1.2 21 32 P2.2 P1.1 22 31 P2.3 P1.0 23 30 CVBS V 24 29 I SSA REF FIL3 25 28 VDDA N.C
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·